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Electrokinetically driven microfluidic mixing with patchwise surface heterogeneity and AC applied electric field

机译:电动驱动的微流体混合与贴透明表面异质性和交流施加电场

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This paper investigates two-dimensional, time-dependent electroosmotic flows driven by an AC electric field via patchwise surface heterogeneities distributed along the microchannel walls. The time-dependent flow fields through the microchannel are simulated for various patchwise heterogeneous surface patterns using the backwards-Euler time stepping numerical method. Different heterogeneous surface patterns are found to create significantly different electrokinetic transport phenomena. It is shown that the presence of oppositely charged surface heterogeneities on the microchannel walls results in the formation of localized flow circulations within the bulk flow. These circulation regions grow and decay periodically in accordance with the applied periodic AC electric field intensity. The circulations provide an effective means of enhancing species mixing in the microchannel. A suitable design of the patchwise heterogeneous surface pattern permits the mixing channel length and the retention time required to attain a homogeneous solution to be reduced significantly.
机译:本文研究了通过沿着微通道壁分布的湿法表面异质性由交流电场驱动的二维时间依赖性电渗流。使用微通道的时间依赖流场用于使用倒退 - 欧拉时间踩踏数值方法来模拟各种湿透异构表面图案。发现不同的异构表面图案形成显着不同的电动传输现象。结果表明,微通道壁上的相反带电的表面异质性导致在散装流内形成局部流动循环。这些循环区域根据所施加的周期性交流电场强度周期性地生长和衰减。循环提供了一种有效的增强微通道混合物种的方法。贴片异质表面图案的合适设计允许混合通道长度和获得均匀溶液所需的保留时间显着降低。

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